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具有δ-选择性铜绿假单胞菌远端螺旋的α-选择性脑膜炎奈瑟菌血红素加氧酶嵌合蛋白中的血红素氧化作用。

Heme oxidation in a chimeric protein of the alpha-selective Neisseriae meningitidis heme oxygenase with the distal helix of the delta-selective Pseudomonas aeruginosa.

作者信息

Deshmukh Rahul, Zeng Yuhong, Furci Lena M, Huang Hong-wei, Morgan Bailey N, Sander Suzanne, Alontaga Aileen Y, Bunce Richard A, Moënne-Loccoz Pierre, Rivera Mario, Wilks Angela

机构信息

Department of Pharmaceutical Sciences, School of Pharmacy, University of Maryland, Baltimore, Maryland 21201-1180, USA.

出版信息

Biochemistry. 2005 Oct 25;44(42):13713-23. doi: 10.1021/bi050810t.

Abstract

Heme oxygenases from the bacterial pathogens Neisseriae meningitidis (nm-HO) and Pseudomonas aeruginosa (pa-HO) share significant sequence identity (37%). In nm-HO, biliverdin IXalpha is the sole product of the reaction, whereas pa-HO yields predominantly biliverdin IXdelta. We have previously shown by NMR that the in-plane conformation of the heme in pa-HO is significantly different from that of nm-HO as a result of distinct interactions of the heme propionates with the protein scaffold [Caignan, G. A., Deshmukh, R., Wilks, A., Zeng, Y., Huang, H. W., Moenne-Loccoz, P., Bunce, R. A., Eastman, M. A., and Rivera, M. (2002) J. Am. Chem. Soc. 124, 14879-14892]. In the report presented here, we have extended these studies to investigate the role of the distal helix by preparing a chimera of nm-HO (nm-HOch), in which distal helix residues 107-142 of nm-HO have been replaced with the corresponding residues of the delta-regioselective pa-HO (112-147). Electronic absorption spectra, resonance Raman and FTIR spectroscopic studies confirm that the orientation and hydrogen bonding properties of the proximal His ligand are not significantly altered in the chimera relative those of the wild-type proteins. The catalytic turnover of the nm-HOch-heme complex yields almost exclusively alpha-biliverdin and a small but reproducible amount of delta-biliverdin. NMR spectroscopic studies reveal that the altered regioselectivity in the chimeric protein likely stems from a dynamic equilibrium between two alternate in-plane conformations of the heme (in-plane heme disorder). Replacement of K16 with Ala and Met31 with Lys in the chimeric protein in an effort to tune key polypeptide-heme propionate contacts largely stabilizes the in-plane conformer conducive to delta-meso hydroxylation.

摘要

来自细菌病原体脑膜炎奈瑟菌(nm-HO)和铜绿假单胞菌(pa-HO)的血红素加氧酶具有显著的序列同一性(37%)。在nm-HO中,胆绿素IXα是反应的唯一产物,而pa-HO主要产生胆绿素IXδ。我们之前通过核磁共振表明,由于血红素丙酸酯与蛋白质支架的不同相互作用,pa-HO中血红素的平面构象与nm-HO有显著差异[凯南,G. A.,德什穆克,R.,威尔克斯,A.,曾,Y.,黄,H. W.,莫内-洛科兹,P.,邦斯,R. A.,伊斯特曼,M. A.,和里维拉,M.(2002年)《美国化学会志》124,14879 - 14892]。在本文所呈现的报告中,我们通过制备nm-HO的嵌合体(nm-HOch)扩展了这些研究,其中nm-HO的远端螺旋残基107 - 142被δ-区域选择性的pa-HO(112 - 147)的相应残基所取代。电子吸收光谱、共振拉曼光谱和傅里叶变换红外光谱研究证实,相对于野生型蛋白质,嵌合体中近端组氨酸配体的取向和氢键性质没有显著改变。nm-HOch-血红素复合物的催化周转几乎只产生α-胆绿素和少量但可重现的δ-胆绿素。核磁共振光谱研究表明,嵌合蛋白中区域选择性的改变可能源于血红素两种交替平面构象之间的动态平衡(平面内血红素无序)。为了调整关键的多肽-血红素丙酸酯接触,在嵌合蛋白中将K16替换为Ala以及将Met31替换为Lys,这在很大程度上稳定了有利于δ-中位羟基化的平面内构象体。

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